Analysis of evolutionary conserved amino acid residues of hOCT1 by

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Last updated 20 março 2025
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Evolutionary conservation predicts function of variants of the human organic cation transporter, OCT1
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Full article: Role of OCT1 in hepatocellular carcinoma
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Differences in Metformin and Thiamine Uptake between Human and Mouse Organic Cation Transporter 1: Structural Determinants and Potential Consequences for Intrahepatic Concentrations
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Evolutionary conservation predicts function of variants of the human organic cation transporter, OCT1
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Cloning and Functional Expression of a Human Liver Organic Cation Transporter
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Amino acids in transmembrane helix 1 confer major functional differences between human and mouse orthologs of the polyspecific membrane transporter OCT1 - ScienceDirect
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Frontiers Diffusion Mechanism Modeling of Metformin in Human Organic Cationic Amino Acid Transporter one and Functional Impact of S189L, R206C, and G401S Mutation
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Analysis of evolutionary conserved amino acid residues of hOCT1 by
Journal of Cellular Physiology, Cell Biology Journal
Analysis of evolutionary conserved amino acid residues of hOCT1 by
A bioinformatics approach to the identification of novel deleterious mutations of human TPMT through validated screening and molecular dynamics

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